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Combined PDGFR and HDAC Inhibition Overcomes PTEN Disruption in Chordoma
Dae-Hee Lee1, Ying Zhang2, Amin B Kassam3
1Department of Neurological Surgery, University of Virginia, PO BOX 800212, Charlottesville, VA 22908, United States of America.
Background:
The majority of chordomas show activation of the platelet-derived growth factor receptor (PDGFR). Based on in vitro intertumoral variation in response to recombinant PDGF protein and PDGFR inhibition, and variable tumor response to imatinib, we hypothesized that chordomas resistant to PDGFR inhibition may possess downstream activation of the pathway.
Methods:
Molecular profiling was performed on 23 consecutive chordoma primary tissue specimens. Primary cultures established from 20 of the 23 specimens, and chordoma cell lines, UCH-1 and UCH-2, were used for in vitro experiments.
Results:
Loss of heterozygosity (LOH) at the phosphatase and tensin homolog (PTEN) locus was observed in 6 specimens (26%). PTEN disruption statistically correlated with increased Ki-67 proliferation index, an established marker of poor outcome for chordoma. Compared to wild type, PTEN deficient chordomas displayed increased proliferative rate, and responded less favorably to PDGFR inhibition. PTEN gene restoration abrogated this growth advantage. Chordomas are characterized by intratumoral hypoxia and local invasion, and histone deacetylase (HDAC) inhibitors are capable of attenuating both hypoxic signaling and cell migration. The combination of PDGFR and HDAC inhibition effectively disrupted growth and invasion of PTEN deficient chordoma cells.
Conclusions:
Loss of heterozygosity of the PTEN gene seen in a subset of chordomas is associated with aggressive in vitro behavior and strongly correlates with increased Ki-67 proliferative index. Combined inhibition of PDGFR and HDAC attenuates proliferation and invasion in chordoma cells deficient for PTEN.
Insights
Loss of PTEN gene in chordomas promotes aggressive growth and resistance to PDGFR inhibition. Combining PDGFR and HDAC inhibitors effectively reduces proliferation and invasion in these resistant chordoma tumors.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Chordomas often exhibit platelet-derived growth factor receptor (PDGFR) activation.
- Tumor response to PDGFR inhibition varies, suggesting downstream pathway activation in resistant cases.
Purpose of the Study:
- To investigate the role of PTEN gene status in chordoma response to PDGFR inhibition.
- To explore combined therapeutic strategies for PTEN-deficient chordomas.
Main Methods:
- Molecular profiling of 23 chordoma primary tissues.
- In vitro experiments using primary cultures and cell lines (UCH-1, UCH-2).
- Assessment of PTEN gene status, proliferation (Ki-67), and response to PDGFR inhibition.
Main Results:
- Loss of heterozygosity (LOH) at the PTEN locus occurred in 26% of specimens.
- PTEN deficiency correlated with higher Ki-67 index, increased proliferation, and reduced response to PDGFR inhibition.
- Restoring PTEN abrogated the growth advantage; combined PDGFR and HDAC inhibition reduced growth and invasion in PTEN-deficient cells.
Conclusions:
- PTEN gene loss in chordomas is linked to aggressive behavior and poor prognosis.
- Combined PDGFR and HDAC inhibition offers a promising therapeutic strategy for PTEN-deficient chordomas.
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